Publication | Closed Access
Regiospecific and Highly Stereoselective Coupling of 6-(Substituted-imidazol-1-yl)purines with 2-Deoxy-3,5-di-<i>O</i>-(<i>p</i>-toluoyl)-α-<scp>d</scp>-<i>e</i><i>rythro</i>-pentofuranosyl Chloride. Sodium-Salt Glycosylation in Binary Solvent Mixtures: Improved Synthesis of Cladribine<sup>1</sup>
40
Citations
22
References
2006
Year
Sodium-salt GlycosylationNatural Product SynthesisEngineeringOrganic SolventsBiochemistryNatural SciencesBinary Solvent MixturesOrganic ChemistryN9 IsomersHighly Stereoselective CouplingStereoselective SynthesisChemistryPharmacologyAsymmetric CatalysisSynthetic ChemistryEnantioselective SynthesisBiomolecular EngineeringPolar Solvent
Glycosylation of 6-(substituted-imidazol-1-yl)purine sodium salts with 2-deoxy-3,5-di-O-(p-toluoyl)-alpha-D-erythro-pentofuranosyl chloride proceeds with regiospecific formation of the N9 isomers. Base substrates with lipophilic substituents on the C6-linked imidazole moiety are more soluble in organic solvents, and the solubility is further increased with binary solvent mixtures. Selective solvation also diminishes the extent of anomerization of the chlorosugar. Stirred reaction mixtures of the modified-purine sodium salts generated in a polar solvent and cooled solutions of the protected 2-deoxysugar chloride in a nonpolar solvent give 2'-deoxynucleoside derivatives with N9 regiochemistry and enhanced beta/alpha configuration ratios. Application of the binary-solvent methodology with 2-chloro-6-(substituted-imidazol-1-yl)purine salts in cold acetonitrile and the chlorosugar in cold dichloromethane gives essentially quantitative yields of the N9 isomers of beta-anomeric 2'-deoxynucleoside intermediates. Direct ammonolysis (NH(3)/MeOH) of such intermediates or benzylation of the imidazole ring followed by milder ammonolysis of the imidazolium salt gives high yields of the clinical anticancer drug cladribine (2-chloro-2'-deoxyadenosine).
| Year | Citations | |
|---|---|---|
Page 1
Page 1